Faculty of Pharmacy, Formulation Research Laboratory, Department of Pharmaceutics, Hamdard University, New Delhi 110062, India.
J Biomed Nanotechnol. 2013 Jul;9(7):1216-29. doi: 10.1166/jbn.2013.1613.
The purpose of this work is intended to investigate the potential of self-nanoemulsifying (SNE) drug delivery system for enhanced oral bioavailability of etoposide by P-glycoprotein (P-gp) modulation. The components of SNE formulation were optimized by their solubilization and emulsification efficiency. The ternary phase diagrams provided nanoemulsion existence ranges and the corresponding formulations were developed and evaluated via thermodynamic and dispersibility tests. The successful formulations were characterized for various parameters including time required for self-emulsification, percentage transmittance, droplet size, surface morphology, zeta potential and in vitro release. The etoposide loaded SNE9 formulation showed 2.6- and 11-fold higher permeability coefficient in apical to basolateral direction across Caco-2 monolayers as compared to the Etosid and plain drug solution, respectively. The etoposide loaded SNE9 formulation showed a higher cytotoxicity at the highest tested concentration compared to the blank SNE9 formulation and the free etoposide. Furthermore, an in vivo pharmacokinetic study of etoposide in SNE9 formulation showed 3.2- and 7.9-fold increase in relative oral bioavailability compared with that of etoposide in Etosid and drug suspension, respectively. Thus, the developed SNE drug delivery system could be a valuable tool for the effective oral delivery of etoposide.
本工作旨在通过 P-糖蛋白(P-gp)调制研究自微乳(SNE)给药系统对提高依托泊苷口服生物利用度的潜力。通过其增溶和乳化效率对 SNE 制剂的成分进行优化。三元相图提供了纳米乳液存在范围,并通过热力学和分散性测试开发和评估了相应的制剂。成功的制剂通过各种参数进行了表征,包括自乳化所需的时间、透光率百分比、粒径、表面形态、Zeta 电位和体外释放。与依托泊苷和普通药物溶液相比,载依托泊苷的 SNE9 制剂在 Caco-2 单层膜中从顶侧向基底侧的渗透系数分别提高了 2.6 倍和 11 倍。与空白 SNE9 制剂和游离依托泊苷相比,载依托泊苷的 SNE9 制剂在最高测试浓度下表现出更高的细胞毒性。此外,依托泊苷在 SNE9 制剂中的体内药代动力学研究表明,与依托泊苷在 Etosid 和药物混悬剂中的口服生物利用度相比,分别提高了 3.2 倍和 7.9 倍。因此,开发的 SNE 给药系统可能是有效口服递依托泊苷的有价值工具。